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The system is composed of an IoT sensor probe, edge/cloud platforms, and integrated solutions for networking, monitoring, logging, reporting, and visualization. This paper provides a comprehensive physical implementation of the probe, including detailed prototype components, testing of pertinent sensor technologies, and analysis of experiments conducted on a compost site using several probe variants. The main contributions of this paper are twofold: (1) the development of a novel IoT system prototype for efficient compost monitoring, and (2) the identification of the optimal sensor technology for measuring compost temperature. Our findings indicate that infrared sensing technology delivers the fastest and most accurate readings. AcknowledgmentsThis work has been supported in full by the Croatian Science Foundation under the project number 3877.Disclosure StatementNo potential conflict of interest was reported by the author(s).Notes1 https://github.com/tomicic/IoTAdditional informationFundingHrvatska Zaklada za Znanost, grant ID: 3877.","PeriodicalId":10714,"journal":{"name":"Compost Science & Utilization","volume":"177 3","pages":"0"},"PeriodicalIF":2.0000,"publicationDate":"2023-11-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"IoT-Based Agricultural Compost Monitoring System: Prototype Development and Sensor Technology Evaluation\",\"authors\":\"Igor Tomicic\",\"doi\":\"10.1080/1065657x.2023.2273845\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"AbstractSmart agriculture refers to the application of advanced technologies in the field of agriculture, such as the Internet of Things, big data, edge/cloud computing, among others. These technologies facilitate the monitoring, tracking, recording, visualization, automation, and analysis of various agricultural operations. One critical process in this domain is composting, an organic waste disposal method that enriches soil with nutrients and encourages sustainable farming practices. However, it requires constant monitoring to ensure high-quality compost production at an optimal rate, without the development of harmful toxins. In this context, we propose a novel IoT-based agricultural compost monitoring system. The system is composed of an IoT sensor probe, edge/cloud platforms, and integrated solutions for networking, monitoring, logging, reporting, and visualization. This paper provides a comprehensive physical implementation of the probe, including detailed prototype components, testing of pertinent sensor technologies, and analysis of experiments conducted on a compost site using several probe variants. The main contributions of this paper are twofold: (1) the development of a novel IoT system prototype for efficient compost monitoring, and (2) the identification of the optimal sensor technology for measuring compost temperature. Our findings indicate that infrared sensing technology delivers the fastest and most accurate readings. 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引用次数: 0
摘要
摘要智慧农业是指物联网、大数据、边缘/云计算等先进技术在农业领域的应用。这些技术促进了对各种农业操作的监测、跟踪、记录、可视化、自动化和分析。这个领域的一个关键过程是堆肥,这是一种有机废物处理方法,可以丰富土壤的营养,并鼓励可持续的农业实践。然而,它需要持续监测,以确保以最佳速度生产高质量的堆肥,而不会产生有害毒素。在此背景下,我们提出了一种新的基于物联网的农业堆肥监测系统。该系统由物联网传感器探头、边缘/云平台以及网络、监控、日志、报告和可视化集成解决方案组成。本文提供了探针的全面物理实现,包括详细的原型组件,相关传感器技术的测试,以及使用几种探针变体在堆肥现场进行的实验分析。本文的主要贡献有两个:(1)开发了一种用于有效监测堆肥的新型物联网系统原型,以及(2)确定了测量堆肥温度的最佳传感器技术。我们的研究结果表明,红外传感技术提供了最快和最准确的读数。本工作得到克罗地亚科学基金会项目编号3877的全额支持。披露声明作者未报告潜在的利益冲突。注1 https://github.com/tomicic/IoTAdditional informationFundingHrvatska Zaklada za Znanost,资助ID: 3877。
IoT-Based Agricultural Compost Monitoring System: Prototype Development and Sensor Technology Evaluation
AbstractSmart agriculture refers to the application of advanced technologies in the field of agriculture, such as the Internet of Things, big data, edge/cloud computing, among others. These technologies facilitate the monitoring, tracking, recording, visualization, automation, and analysis of various agricultural operations. One critical process in this domain is composting, an organic waste disposal method that enriches soil with nutrients and encourages sustainable farming practices. However, it requires constant monitoring to ensure high-quality compost production at an optimal rate, without the development of harmful toxins. In this context, we propose a novel IoT-based agricultural compost monitoring system. The system is composed of an IoT sensor probe, edge/cloud platforms, and integrated solutions for networking, monitoring, logging, reporting, and visualization. This paper provides a comprehensive physical implementation of the probe, including detailed prototype components, testing of pertinent sensor technologies, and analysis of experiments conducted on a compost site using several probe variants. The main contributions of this paper are twofold: (1) the development of a novel IoT system prototype for efficient compost monitoring, and (2) the identification of the optimal sensor technology for measuring compost temperature. Our findings indicate that infrared sensing technology delivers the fastest and most accurate readings. AcknowledgmentsThis work has been supported in full by the Croatian Science Foundation under the project number 3877.Disclosure StatementNo potential conflict of interest was reported by the author(s).Notes1 https://github.com/tomicic/IoTAdditional informationFundingHrvatska Zaklada za Znanost, grant ID: 3877.
期刊介绍:
4 issues per year
Compost Science & Utilization is currently abstracted/indexed in: CABI Agriculture & Environment Abstracts, CSA Biotechnology and Environmental Engineering Abstracts, EBSCOhost Abstracts, Elsevier Compendex and GEOBASE Abstracts, PubMed, ProQuest Science Abstracts, and Thomson Reuters Biological Abstracts and Science Citation Index